N-Terminal Domain of Feline Calicivirus (FCV) Proteinase-Polymerase Contributes to the Inhibition of Host Cell Transcription
Author:
Publisher
MDPI AG
Subject
Virology,Infectious Diseases
Link
http://www.mdpi.com/1999-4915/8/7/199/pdf
Reference26 articles.
1. Model systems for the study of human norovirus biology
2. Feline Calicivirus: Recovery of Wild-Type and Recombinant Viruses after Transfection of cRNA or cDNA Constructs
3. Identification of a protein linked to the genomic and subgenomic mRNAs of feline calicivirus and its role in translation.
4. Calicivirus translation initiation requires an interaction between VPg and eIF4E
5. Caliciviruses Differ in Their Functional Requirements for eIF4F Components
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1. Update on feline calicivirus: viral evolution, pathogenesis, epidemiology, prevention and control;Frontiers in Microbiology;2024-05-02
2. Isolation and molecular characteristics of a recombinant feline calicivirus from Qingdao, China;VET RES FORUM;2023
3. Modified-Live Feline Calicivirus Vaccination Elicits Cellular Immunity against a Current Feline Calicivirus Field Strain in an Experimental Feline Challenge Study;Viruses;2021-08-31
4. Feline Calicivirus Proteinase-Polymerase Protein Degrades mRNAs To Inhibit Host Gene Expression;Journal of Virology;2021-06-10
5. Feline calicivirus strain 2280 p30 antagonizes type I interferon-mediated antiviral innate immunity through directly degrading IFNAR1 mRNA;PLOS Pathogens;2020-10-19
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